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A 2-D transient numerical heat transfer model of the solar absorber plate to improve PV/T solar collector systems

机译:太阳能吸收板的二维瞬态数值传热模型,用于改进PV / T太阳能收集器系统

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摘要

This paper presents a genuine 2-D transient numerical model to evaluate the temperature field and the dependent electrical performances of different solar absorber plates. It can readily be adapted for solar thermal absorber plates, standard PV plates or thermally enhanced PV plates that can be used in PV/T solar collectors. The model can also be combined with the appropriate heat exchanger equations to simulate a complete solar collector. A simple optical model is combined with the well-known five parameters PV module electrical model and the 2-D heat conduction equation to compute the temperature field of the PV plate and the electrical power generated for every time step of the simulation. The resulting differential equation is solved through finite volume discretization using an implicit time discretization scheme. The model relies on widely available weather parameters such as total horizontal solar radiation, ambient temperature, wind speed, etc. Validation of the electrical model is first carried out in real outdoor weather conditions comparing simulated and measured electrical current. During this process, measured temperature of the plate and incident solar radiation are used as inputs. Then, the global multi-physic model is validated using a temperature measurement at a selected point and the measured electrical performances. In the multi-physic model, measurements of the incident solar radiation, air temperature, wind speed and relative humidity are used as inputs. The validation results for the temperature showed a maximum discrepancy of the numerical predictions with respect to the measurements of less than 2 [degrees C] and a discrepancy below 7 [%] for the electric power production both over a complete day of simulation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种真正的二维瞬态数值模型,用于评估温度场以及不同太阳能吸收板的相关电性能。它可以很容易地适用于可用于PV / T太阳能收集器的太阳能吸热板,标准PV板或热增强PV板。该模型还可以与适当的热交换器方程式组合以模拟完整的太阳能收集器。将简单的光学模型与众所周知的五参数PV模块电模型和2-D导热方程相结合,以计算PV板的温度场以及在每个模拟步骤中生成的电功率。通过使用隐式时间离散化方案的有限体积离散化来求解所得的微分方程。该模型依赖于广泛可用的天气参数,例如总水平太阳辐射,环境温度,风速等。首先在真实的室外天气条件下对电模型进行验证,比较模拟电流和测量电流。在此过程中,将测得的板温度和入射太阳辐射用作输入。然后,使用选定点的温度测量值和测量的电气性能来验证全局多物理场模型。在多物理模型中,入射太阳辐射,空气温度,风速和相对湿度的测量值用作输入。温度的验证结果表明,在整个一整天的模拟中,相对于测量结果而言,数值预测的最大差异均小于2 [℃],而最大差异低于7 [%]。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2017年第9期|366-378|共13页
  • 作者单位

    Univ Quebec, Ind Res Grp Energy Technol & Energy Efficiency T3, Ecole Technol Super, 1100 Rue Notre Dame Quest, Montreal, PQ H3C 1K3, Canada;

    Univ Quebec, Ind Res Grp Energy Technol & Energy Efficiency T3, Ecole Technol Super, 1100 Rue Notre Dame Quest, Montreal, PQ H3C 1K3, Canada;

    Univ Quebec, Ecole Technol Super, 1100 Rue Notre Dame Quest, Montreal, PQ H3C 1K3, Canada;

    Hydro Quebec, Lab Technol Energie, 600 Rue Montagne, Shawinigan, PQ G9N 7N5, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Photovoltaic; Solar absorber plate; 2D heat conduction; Five parameters electrical model; PV/T;

    机译:光伏;太阳能吸收板;二维热传导;五参数电气模型;PV / T;

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